Outcomes
One row per source flow per list. Needs a decision is an unmatched flow with candidate substances — usually a context or unit mismatch. Needs a substance is one without: a genuinely unknown compound, already enriched before matching, so it wants a ruling rather than another pass.
| Source flow | List | Context | Unit | CAS | Outcome | Basis | Target | Candidates |
|---|---|---|---|---|---|---|---|---|
|
Sulfur
32451556-ee07-4e36-bd8a-09f8847f9c83
|
ecoinvent-3.12 | soil → unspecified | kg | 7704-34-9 | algorithm |
cas
7704-34-9
|
08a91e70-3ddc-11dd-9925-0050c2490048 |
1 flow
|
|
Dinoseb
4c79707b-07b7-5c19-b00c-0a00931b2637
|
ecoinvent-3.12 | soil → unspecified | kg | 88-85-7 | algorithm |
cas
88-85-7
|
08a91e70-3ddc-11dd-94c8-0050c2490048 |
1 flow
|
|
Thorium-232
e17ab5b1-0e70-409c-b7fd-0a01e6a26de3
|
ecoinvent-3.12 | air → urban air close to ground | kBq | 7440-29-1 | algorithm |
cas+label
7440-29-1
|
08a91e70-3ddc-11dd-9981-0050c2490048 |
1 flow
|
|
Cyanamide
b577a31e-26ba-552d-a458-0a089975f97f
|
ecoinvent-3.12 | soil → unspecified | kg | 420-04-2 | algorithm |
cas
420-04-2
|
ea528856-6f48-4f0e-a97b-e8c7e327b624 |
1 flow
|
|
Methabenzthiazuron
bb9a0c00-e0af-4926-8b0e-0a0be79abaf6
|
ecoinvent-3.12 | soil → agricultural | kg | 18691-97-9 | algorithm |
cas
18691-97-9
|
4d9a8790-3ddd-11dd-96de-0050c2490048 |
1 flow
|
|
1,3,5-Trioxane
3ddfe0c0-f950-5ca5-b1ea-0a159d6b2944
|
ecoinvent-3.12 | soil → unspecified | kg | 110-88-3 | algorithm |
cas
110-88-3
|
f864b564-b854-4bb6-9060-f87c99dc0437 |
1 flow
|
|
Ethanethiol
aecf5a99-a578-4321-884b-0a198a531507
|
ecoinvent-3.12 | air → low population density, long-term | kg | 75-08-1 | algorithm |
cas
75-08-1
|
08a91e70-3ddc-11dd-9344-0050c2490048 |
1 flow
|
|
Trifluralin
208c4248-54ea-5b49-97cb-0a24a7495a6d
|
ecoinvent-3.12 | soil → unspecified | kg | 1582-09-8 | algorithm |
cas
1582-09-8
|
fe0acd60-3ddc-11dd-ae1f-0050c2490048 |
1 flow
|
|
Butyl Benzyl Phthalate
21707ec1-bc38-4b1c-ac8b-0a2b3f7d5ec9
|
ecoinvent-3.12 | water → ground-, long-term | kg | 85-68-7 | algorithm |
cas
85-68-7
|
fe0acd60-3ddc-11dd-a333-0050c2490048 |
1 flow
|
|
Lactic Acid
35a27f5c-487b-48c6-bfd5-0a2dbacf2045
|
ecoinvent-3.12 | air → unspecified | kg | 50-21-5 | algorithm |
cas
50-21-5
|
70ad3fc8-f5b5-487a-bd86-2b67e7708901 |
1 flow
|
|
Methylchloride
370447a7-70d1-47bd-8577-0a32c4f53570
|
ecoinvent-3.12 | air → urban air close to ground | kg | 74-87-3 | algorithm |
cas
74-87-3
|
08a91e70-3ddc-11dd-9679-0050c2490048 |
1 flow
|
|
Polonium-210
6d8bddf2-fb89-466b-bbb5-0a3b4ee5df81
|
ecoinvent-3.12 | air → low population density, long-term | kBq | 13981-52-7 | algorithm |
cas
13981-52-7
|
fe0acd60-3ddc-11dd-aa9a-0050c2490048 |
1 flow
|
|
Argon-41
091d8157-f865-4858-8ceb-0a49ac84614b
|
ecoinvent-3.12 | air → non-urban air or from high stacks | kBq | 14163-25-8 | algorithm |
cas
14163-25-8
|
08a91e70-3ddc-11dd-91dc-0050c2490048 |
1 flow
|
|
DDT
d629affb-e7dc-5db9-9cf0-0a5803142d6f
|
ecoinvent-3.12 | soil → agricultural | kg | 50-29-3 | algorithm |
cas
50-29-3
|
4d9a8790-3ddd-11dd-94d9-0050c2490048 |
1 flow
|
|
Dodine
03f3255b-efb7-5a1e-8288-0a5e7bfbe791
|
ecoinvent-3.12 | soil → agricultural | kg | 2439-10-3 | algorithm |
cas
2439-10-3
|
ae7fa572-cb9e-4e9c-9a30-3ac4c7c12f49 |
1 flow
|
|
Triasulfuron
157597d3-7b5d-5186-bef4-0a71ec8c7513
|
ecoinvent-3.12 | water → surface water | kg | 82097-50-5 | algorithm |
cas
82097-50-5
|
4d9a8790-3ddd-11dd-93b8-0050c2490048 |
1 flow
|
|
Diclofop-methyl
1488a37e-195b-564b-8000-0a75ad5cb7c9
|
ecoinvent-3.12 | soil → forestry | kg | 51338-27-3 | algorithm |
cas
51338-27-3
|
59822f7a83a044b4bb75556ecc45396c36682726 |
3 flows, 3 tied at 3
|
|
Pyrimethanil
b2663551-c9e2-446c-88e1-0a87435667dc
|
ecoinvent-3.12 | soil → agricultural | kg | 53112-28-0 | algorithm |
cas
53112-28-0
|
0e71b6fd-5e88-45a6-87db-713247b112bb |
1 flow
|
|
1-Pentanol
070dc6b3-0976-45a0-803e-0a87d7e96959
|
ecoinvent-3.12 | water → unspecified | kg | 71-41-0 | algorithm |
cas
71-41-0
|
ac56e764-b13b-4dcd-abd6-9c43fcbaf781 |
1 flow
|
|
Oxydemeton-methyl
e04e362b-72bd-5f36-8feb-0a8ecd91a314
|
ecoinvent-3.12 | water → surface water | kg | 301-12-2 | algorithm |
cas
301-12-2
|
fe0acd60-3ddc-11dd-ac3f-0050c2490048 |
1 flow
|
|
Cyhalofop
f2412f2e-a12e-5577-a9f6-0a95766f1dbf
|
ecoinvent-3.12 | water → surface water | kg | 122008-78-0 | algorithm |
cas
122008-78-0
|
b9dd0df5-968a-4edb-87f0-a89d88cb8705 |
1 flow
|
|
Tralkoxydim
3690e095-6902-5f63-a0aa-0a98ed26e9fe
|
ecoinvent-3.12 | water → unspecified | kg | 87820-88-0 | algorithm |
cas
87820-88-0
|
90dff56d-9203-446a-be88-ea92aa944dd8 |
1 flow
|
|
Cycloate
96dbbb35-f4fd-563e-8c57-0a9facd5dd6a
|
ecoinvent-3.12 | soil → unspecified | kg | 1134-23-2 | algorithm |
cas
1134-23-2
|
0ea6fcf1-91ba-43c9-862d-3db39ed96274 |
1 flow
|
|
Ethyl Acrylate
555e5954-11e8-4ed9-8e16-0aaa3f3898a2
|
ecoinvent-3.12 | air → unspecified | kg | 140-88-5 | algorithm |
cas
140-88-5
|
08a91e70-3ddc-11dd-9368-0050c2490048 |
1 flow
|
|
Rotenone
dbf3602d-f7f6-59e4-8109-0aabeda2a7d4
|
ecoinvent-3.12 | soil → unspecified | kg | 83-79-4 | algorithm |
cas
83-79-4
|
4d9a8790-3ddd-11dd-9ab9-0050c2490048 |
1 flow
|
|
Dimethyldichlorosilane
d0cde0b1-afcc-5179-8895-0aacba2e15a1
|
ecoinvent-3.12 | air → unspecified | kg | 75-78-5 | algorithm |
cas
75-78-5
|
01c8fb79-cec4-43bd-a675-03a99ecfe94b |
1 flow
|
|
Trimethylamine
9ee52c9a-194b-476f-a0ff-0aba3759e2a0
|
ecoinvent-3.12 | water → unspecified | kg | 75-50-3 | algorithm |
cas
75-50-3
|
e2fa8f85-6555-11dd-ad8b-0800200c9a66 |
1 flow
|
|
Aramite
e17cd69b-ddde-5d9f-be74-0ad2825ecf95
|
ecoinvent-3.12 | water → surface water | kg | 140-57-8 | algorithm |
cas
140-57-8
|
fe0acd60-3ddc-11dd-a4c6-0050c2490048 |
1 flow
|
|
Methidathion
5aea53fb-c3f6-56dd-a1d1-0adb73fe2cc4
|
ecoinvent-3.12 | air → non-urban air or from high stacks | kg | 950-37-8 | algorithm |
cas
950-37-8
|
4d9a8790-3ddd-11dd-934d-0050c2490048 |
1 flow
|
|
Transformation, To Field Margin/hedgerow
c8a0392e-5ef6-4988-adf6-0adf88129aa1
|
ecoinvent-3.12 | natural resource → land | m2 | — | algorithm |
land_class
transformation-to/field-margin
|
09fe907b-527e-4da9-91f3-7b9a75892b2d |
1 flow
|
|
Iodosulfuron
965fe740-b3d3-540a-bb2d-0ae511a30ce0
|
ecoinvent-3.12 | water → surface water | kg | 185119-76-0 | algorithm |
cas
185119-76-0
|
c39c958e79e4d7dcb490c219bc796b236d55ff62 |
1 flow
|
|
Penconazole
7e8dba6b-1755-506a-9637-0ae5ed18bf3b
|
ecoinvent-3.12 | soil → forestry | kg | 66246-88-6 | algorithm |
cas
66246-88-6
|
451aab318c2cd19159ae37d076cf4abb15948945 |
3 flows, 3 tied at 3
|
|
2,4-DB
68f64fd1-01f5-43b4-b191-0aebfffcf293
|
ecoinvent-3.12 | water → ground- | kg | 94-82-6 | algorithm |
cas
94-82-6
|
723dec81b2ffe492a0da4808a1a9295396332b5b |
4 flows, 4 tied at 3
|
|
Siduron
cffba3cf-7116-5eb5-9cdc-0af25184b32f
|
ecoinvent-3.12 | water → unspecified | kg | 1982-49-6 | algorithm |
cas
1982-49-6
|
4d9a8790-3ddd-11dd-8f8e-0050c2490048 |
1 flow
|
|
Flucythrinate
1ace100f-05ee-5054-a97b-0af652dd70ec
|
ecoinvent-3.12 | air → unspecified | kg | 70124-77-5 | algorithm |
cas
70124-77-5
|
4d9a8790-3ddd-11dd-9101-0050c2490048 |
1 flow
|
|
Cloquintocet-mexyl
f0291916-5714-485d-978a-0af7a9dc1000
|
ecoinvent-3.12 | air → non-urban air or from high stacks | kg | 99607-70-2 | algorithm |
cas
99607-70-2
|
7ba1d018-9e97-41cf-b998-33876cce8338 |
1 flow
|
|
Mandipropamid
12e2fffe-08cd-451c-ad46-0b0a5db3c9ba
|
ecoinvent-3.12 | soil → agricultural | kg | 374726-62-2 | algorithm |
cas
374726-62-2
|
5df8d86d-8b13-4260-920d-f73562effc5c |
1 flow
|
|
Flazasulfuron
b5936707-2542-57ff-bc8f-0b1384908240
|
ecoinvent-3.12 | water → surface water | kg | 104040-78-0 | algorithm |
cas
104040-78-0
|
ca6b43fd-4640-437c-926c-ad8dd006f35a |
1 flow
|
|
Formate
15bdfe3d-58b7-4cf3-a8db-0b16a8b9949b
|
ecoinvent-3.12 | water → ground- | kg | 71-47-6 | algorithm |
cas
71-47-6
|
8dc328004737a54e3fe48b28a698dbf901b9000e |
3 flows, 3 tied at 3
|
|
Terbufos
05651af0-21fb-5661-992e-0b1f415bd437
|
ecoinvent-3.12 | soil → forestry | kg | 13071-79-9 | algorithm |
cas
13071-79-9
|
c0ef15554801473958fdf6f7de43d07a7d77bd5e |
3 flows, 3 tied at 3
|
|
1,4-Diethylbenzene
377e0c47-28cc-4280-b790-0b4601340748
|
ecoinvent-3.12 | water → unspecified | kg | 105-05-5 | algorithm |
cas
105-05-5
|
65f29f60-ebf4-46fd-a9e7-1d8f7301779d |
1 flow
|
|
Thidiazuron
a1b671d5-b086-542f-acde-0b481c73f7a6
|
ecoinvent-3.12 | air → non-urban air or from high stacks | kg | 51707-55-2 | algorithm |
cas
51707-55-2
|
fe0acd60-3ddc-11dd-aed8-0050c2490048 |
1 flow
|
|
Thifensulfuron
90b34b12-9c37-5149-9742-0b7c15d3a9b1
|
ecoinvent-3.12 | air → unspecified | kg | 79277-67-1 | algorithm |
cas
79277-67-1
|
4402148e60c40410f6f2720a51cbc5fc12cabf2f | — |
|
Metapa
7996770a-2fa0-575b-944a-0b8718b2d5d6
|
ecoinvent-3.12 | air → unspecified | kg | 57-39-6 | algorithm |
cas
57-39-6
|
08a91e70-3ddc-11dd-a201-0050c2490048 |
1 flow
|
|
Glyphosate-isopropylammonium
e0f299ed-1fd4-55af-a085-0b877a7cd98b
|
ecoinvent-3.12 | water → unspecified | kg | 38641-94-0 | algorithm |
cas
38641-94-0
|
4d9a8790-3ddd-11dd-9a5e-0050c2490048 |
1 flow
|
|
Hydrogen Peroxide
1dcf6b74-c474-420b-81ca-0b8d3d4f28d7
|
ecoinvent-3.12 | air → unspecified | kg | 7722-84-1 | algorithm |
cas
7722-84-1
|
4d9a8790-3ddd-11dd-9237-0050c2490048 |
1 flow
|
|
Calcium Cyanamide
96502181-6452-5c99-a782-0b908485fb91
|
ecoinvent-3.12 | air → non-urban air or from high stacks | kg | 156-62-7 | algorithm |
cas
156-62-7
|
a8e86047-823f-447d-b7d3-897bf9ae9d9f |
1 flow
|
|
BOD5, Biological Oxygen Demand
f012d2d5-ebb4-4531-8285-0b98af3dcbd4
|
ecoinvent-3.12 | water → ocean | kg | — | algorithm |
label
biological oxygen demand
|
08a91e70-3ddc-11dd-97e1-0050c2490048 |
1 flow
|
|
Florasulam
0015ec22-72cb-4af1-8c7b-0ba0d041553c
|
ecoinvent-3.12 | soil → agricultural | kg | 145701-23-1 | algorithm |
cas
145701-23-1
|
22db948c-cea0-43df-a2b0-a82fb222c4b3 |
1 flow
|
|
Clopyralid
6fd855b1-4885-5c8b-a9ee-0ba284e1dfe4
|
ecoinvent-3.12 | soil → forestry | kg | 1702-17-6 | algorithm |
cas
1702-17-6
|
4c2bf66b09a015b67bc8a2399c30ac413c28d3b2 |
3 flows, 3 tied at 3
|